US10107752B2

Scanning analyzer for single molecule detection and methods of use

Summary by NHIP

Single molecule detection analyzer

The analyzer uses electromagnetic radiation to detect single molecules in a microwell with zero carryover. It determines presence by comparing bins exceeding a threshold photon value against a standard curve while scanning samples at 15-235 cm per minute.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

The invention encompasses analyzers and analyzer systems that include a single molecule analyzer, methods of using the analyzer and analyzer systems to analyze samples, either for single molecules or for molecular complexes. The single molecule uses electromagnetic radiation that is translated through the sample to detect the presence or absence of a single molecule. The single molecule analyzer provided herein is useful for diagnostics because the analyzer detects single molecules with zero carryover between samples.

US10107752B2, drawing sheet 1
Sheet 1 of 7

Term

2.2 yearsleft in the term

Expires 18 December 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

61 claims: 4 independent, 57 dependent

  1. 1
    Broadest claimClaim Score 51, average(NHIP)An analyzer, comprising:(a) an electromagnetic radiation source;(b) an objective that directs electromagnetic radiation from the electromagnetic radiation source to a moveable interrogation space in a microwell of a microplate for confining a processing sample;(c) a detector that detects electromagnetic radiation emitted from a photon emitting moiety in the interrogation space when the moiety is present in a processing sample;and (d) a processor operatively connected to the detector, wherein the processor is configured to determine a threshold photon value corresponding to a background signal in the interrogation space, determine the presence of a photon emitting moiety in the interrogation space in each of a plurality of bins by identifying bins having a photon value greater than the threshold value, and compare the number of bins having a photon value greater than the threshold value to a standard curve.
  2. 36
    A method for determining an analyte, comprising:(a) directing electromagnetic radiation from an electromagnetic radiation source to an interrogation space in a processing sample in a microwell of a microtiter plate, wherein the processing sample comprises a photon emitting moiety comprising or corresponding to the analyte;(b) detecting the presence or absence of the photon emitting moiety in the interrogation space located at a first position in the processing sample;(c) translating the interrogation space through the processing sample to a subsequent position in the processing sample;(d) detecting the presence or absence of the photon emitting moiety in the subsequent position in the processing sample;(e) repeating steps (c) and (d) as required to detect the presence or absence of the photon emitting moiety in more than one position in the processing sample;and (f) determining the analyte by determining a threshold photon value corresponding to a background signal in the interrogation space, determining the presence of the photon emitting moiety in the interrogation space in each of a plurality of bins by identifying bins having a photon value greater than the threshold value, and relating the number of bins having a photon value greater than the threshold level to the presence or amount of the analyte by comparing the number of bins having a photon value greater than the threshold value to a standard curve.
  3. 60
    An analyzer, comprising:(a) an electromagnetic radiation source;(b) an objective that directs electromagnetic radiation from the electromagnetic radiation source to a moveable interrogation space in a microwell of a microplate for confining a processing sample;(c) a detector that detects electromagnetic radiation emitted from a photon emitting moiety in the interrogation space when the moiety is present in the processing sample;and (d) a processor operatively connected to the detector, wherein the processor is configured to: determine a threshold photon value corresponding to a background signal in the interrogation space, determine the presence of a photon emitting moiety comprising or corresponding to an analyte in the interrogation space in each of a plurality of individual bins by identifying individual bins having a photon value greater than the threshold value, wherein each individual bin having a photon value greater than the threshold level represents an individual detection event, and wherein no detection event is registered for an individual bin if the total number of photons in the individual bin is not above the threshold level, determine a total signal as a sum of the individual detection events, and determine the presence of amount of the analyte in the processing sample as a function of the total signal.
  4. 61
    A method for determining an analyte, comprising:(a) directing electromagnetic radiation from an electromagnetic radiation source to an interrogation space in a processing sample in a microwell of a microtiter plate, and wherein the microtiter plate comprises a plurality of microwells;(b) determining a threshold photon value corresponding to a background signal in the interrogation space;(c) detecting the presence or absence of a photon emitting moiety comprising or corresponding to an analyte in the interrogation space located at a first position in the processing sample by determining a photon value greater than the threshold value during an individual bin, wherein the photon value greater than the threshold level represents an individual detection event, and wherein no detection event is registered for the individual bin if the total number of photons in the individual bin is not above the threshold level;(d) translating the interrogation space through the processing sample to a subsequent position in the processing sample;(e) detecting the presence or absence of the photon emitting moiety in the subsequent position in the processing sample during a subsequent individual bin;and (f) repeating steps (c), (d), and (e) as required to detect the presence or absence of the photon emitting moiety in a plurality of positions of the processing sample during a plurality of individual bins;(g) determining a total signal as a sum of the individual detection events;(h) determining the presence or amount of the analyte in the processing sample by comparing the total signal to a standard curve;and (i) repeating steps (a) to (h) for another microwell in the microtiter plate.